Description
A Chemical Injection Quill is a device used in various industries, like oil and gas, for injecting chemicals into a system. It’s designed to deliver chemicals accurately at a specific point, helping control processes or prevent issues like corrosion in pipelines. These quills can be customized based on needs and are made from high-quality materials for reliable, long-lasting use.
Injection quills are used extensively across various sectors due to their ability to accurately and safely deliver chemicals into a system. In the oil and gas industry, they’re used to inject corrosion inhibitors into pipelines to reduce the rate of corrosion and extend the lifespan of the infrastructure. They are also applied in water treatment plants where they introduce disinfectants to eliminate harmful bacteria and other pathogens. In the chemical manufacturing industry, injection quills are used to add precise amounts of reagents during different stages of production, ensuring product quality and safety. Lastly, in power plants, they help in the accurate injection of chemicals for controlling pH, preventing scaling, and reducing the potential for corrosion in boiler systems.
Name | High-Pressure Injection Quill | |
Material | Stainless Steel 304, Stainless Steel 316, DSS F51, Carbon Steel A105N, and Inconel 625 | |
Operating Temperature | -20~+120℃ | |
Key Features | easy to operate | |
long life and high accuracy | ||
low cost and high efficiency | ||
Payment | TT/LC | |
Advantages | First, they are lightweight and flexible. | |
Secondly, excellent injection efficiency | ||
At last, accurate location tracking |
Installation Method
Follow these steps to install the chemical injection quill:
- Start by wrapping the sealing strip on the threaded end of the dropper. Attach this to the NPT fitting of the injection nut and tighten.
- Next, place the main seal packing on the plug’s screw with its larger end facing the plug’s center. Connect this to the other thread of the injection nut, tighten it, and secure the set screw.
- Temporarily fix the flange seat of the equipment to the pipe’s mounting flange, but do not tighten it yet.
- Securely fasten the assembled stopper injection assembly to the flange seat.
- Now, loosen the connection to the mounting flange. Remove the entire device and determine the orientation of the bevel of the injection cannula. Adjust the orientation so that the spray sleeve’s inclination is opposite to the medium’s flow direction, opposite of the nozzle. You can measure or visually inspect the angle between the tee port or tee flange adapter and the desired position.
- Unscrew the fitting body from the plug injection assemblies by rotating it counterclockwise at a certain angle. Then, loosen the injection nut’s fastening screw and screw it up.
- If the injection body is in a tee port shape, wrap a sealing strip around the two ends of the NPT tube. Connect one end to the T-type side opening on the flange pedestal and the other to the valve end. Screw these up to secure them.
Model | ||||||||||||||||||||||||||||
SI | Quill Injection SI | |||||||||||||||||||||||||||
-Code | Plug | |||||||||||||||||||||||||||
Pxxx | Type | Material | Sealing Material | |||||||||||||||||||||||||
0 | No Request | 0 | CS | 0 | No Request | |||||||||||||||||||||||
1 | Hollow Plug Body | 1 | 316SS | 3 | DSS | 1 | Viton O-Ring / PTFE Primary Packing | |||||||||||||||||||||
2 | Solid Plug Body | 2 | 316LSS | 4 | INCONEL | 2 | HNBR | |||||||||||||||||||||
– Code | Injection Nut | |||||||||||||||||||||||||||
Nxx | Connection Size | Material | ||||||||||||||||||||||||||
0 | No Request | 0 | CS | |||||||||||||||||||||||||
1 | 1/4″ | 1 | 316SS | 3 | DSS | |||||||||||||||||||||||
2 | 1/2″ | 2 | 316LSS | 4 | INCONEL | |||||||||||||||||||||||
– Code | Injection Tube | |||||||||||||||||||||||||||
Sxxx-Lx″ | Connection Size | Material | Nozzle | Line size(x″) | ||||||||||||||||||||||||
0 | No Request | 0 | CS | 0 | No Request | The most effective position for injection is generally at the center of the pipe | ||||||||||||||||||||||
1 | 1/4″ | 1 | 316SS | 1 | Open | |||||||||||||||||||||||
2 | 1/2″ | 2 | 316LSS | 2 | Quill | |||||||||||||||||||||||
3 | DSS | 3 | Cap & Core | |||||||||||||||||||||||||
4 | INCONEL | |||||||||||||||||||||||||||
– Code | Nipple and Valve (or End Flange) of Tee | |||||||||||||||||||||||||||
Txx | Connection Size | Material | ||||||||||||||||||||||||||
0 | No Request | 0 | CS | |||||||||||||||||||||||||
1 | 1/4″Nipple | a | 1/4″Nipple and Valve | 1 | 316SS | |||||||||||||||||||||||
2 | 1/2″Nipple | b | 1/2″Nipple and Valve | 2 | 316LSS | |||||||||||||||||||||||
3 | 3/4″Nipple | c | 3/4″Nipple and Valve | 3 | D SS | |||||||||||||||||||||||
4 | 1″Nipple | d | 1″Nipple and Valve | 4 | INCONEL | |||||||||||||||||||||||
5 | 1/4″Flange | e | 1/4″Nipple end Flange | |||||||||||||||||||||||||
6 | 1/2″Flange | f | 1/2″Nipple end Flange | |||||||||||||||||||||||||
7 | 3/4″Flange | g | 3/4″Nipple end Flange | |||||||||||||||||||||||||
8 | 1″Flange | h | 1″Nipple end Flange | |||||||||||||||||||||||||
For Example:SI-P221-N12-S122-L4″-T22 SI: Sampling and Injection Assembly P221: Solid Plug Body in 316LSS Viton O-Ring and PTFE Primary Packing N12: Injection Nut Connection Size: 1/4″ and Material: 316LSS S122:Injection The tube connection size is 1/4 and the material is 316LSS.The type of nozzle is quills L4″:For 4″pipe. T22: Nipple of Tee Connection Size: 1/2″, Nipple Material: 316LSS Important NoticeOperators should wear appropriate protective clothing and follow relevant standards for instrument and equipment operation during the installation and operation processes. During under-pressure operation, operators should keep all parts of their bodies away from the device’s interface port. This precaution is to prevent injury from potential medium leakage during operation. The chemical injection system is designed to inject chemical agents into the drilling or gathering systems in a controlled manner. This feature helps meet the regular production requirements of oil and gas wells. Performance Characteristics:
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